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Understanding electronic effects on carboxylate-assisted C-H activation at ruthenium: the importance of kinetic and thermodynamic control
Raed A. Alharis
, Claire L. McMullin
, David L. Davies
, Kuldip Singh
, Stuart A. Macgregor
Institute of Chemical Sciences
School of Engineering & Physical Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
28
Citations (Scopus)
173
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Dive into the research topics of 'Understanding electronic effects on carboxylate-assisted C-H activation at ruthenium: the importance of kinetic and thermodynamic control'. Together they form a unique fingerprint.
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INIS
control
100%
ruthenium
100%
thermodynamics
100%
kinetics
100%
cymene
66%
bonding
66%
electrons
66%
substrates
33%
weight
33%
interactions
33%
dissociation
33%
signals
33%
ligands
33%
cleavage
33%
elongation
33%
stoichiometry
33%
competition
33%
nitrogen dioxide
33%
Chemistry
Ruthenium
100%
Transition State
100%
electronics
100%
Carboxylic Acid
100%
Density Functional Theory
66%
Cymene
66%
Substituent Effect
33%
1-Phenylpyrazole
33%
Nitrogen Dioxide
33%
Catalytic Reaction
33%
formation
33%
Chemical Engineering
Carboxylic Acid
100%
Discrete Fourier Transform
100%
Catalytic Reaction
50%